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The Effectiveness of Shrouding on Reducing Meshed Spur Gear Power Loss - Test Results

机译:覆盖在减少啮型啮合齿轮断电损耗的效果 - 试验结果

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Gearbox efficiency is reduced at high rotational speeds due to windage drag and viscous effects on rotating, meshed gear components. A goal of NASA aeronautics rotorcraft research is aimed at propulsion technologies that improve efficiency while minimizing vehicle weight. Specifically, reducing power losses to rotorcraft gearboxes would allow gains in areas such as vehicle payload, range, mission type, and fuel consumption. To that end, a gear windage rig has been commissioned at NASA Glenn Research Center to measure windage drag on gears and to test methodologies to mitigate windage power losses. One method used in rotorcraft gearbox design attempts to reduce gear windage power loss by utilizing close clearance walls to enclose the gears in both the axial and radial directions. The close clearance shrouds result in reduced drag on the gear teeth and reduced power loss. For meshed spur gears, the shrouding takes the form of metal side plates and circumferential metal sectors. Variably positioned axial and radial shrouds are incorporated in the NASA rig to study the effect of shroud clearance on gearbox power loss. A number of researchers have given experimental and analytical results for single spur gears, with and without shrouding. Shrouded meshed spur gear test results are sparse in the literature. Windage tests were run at NASA Glenn using meshed spur gears at four shroud configurations: unshrouded, shrouded (max. axial, max. radial), and two intermediate shrouding conditions. Results are compared to available meshed spur gear power loss data/analyses as well as single spur gear data/analyses. Recommendations are made for future work.
机译:由于旋转,啮合的齿轮部件的旋转速度阻力和粘性效果,齿轮箱效率降低了高转速。美国宇航局航空旋翼研究的目标是针对推进技术,以提高效率,同时最小化车辆重量。具体而言,将功率损耗降低到旋翼机齿轮箱将允许在车辆有效载荷,范围,任务类型和燃料消耗等领域获得增益。为此,齿轮风向器钻机已被委托在NASA Glenn Research Center上测量齿轮上的风度拖动并测试方法,以减轻风觉电源损耗。在旋翼机组箱设计中使用的一种方法试图通过利用近距离壁来减少齿轮风向电力损耗,以在轴向和径向方向上封闭齿轮。紧密的间隙护罩导致齿轮齿上的拖动减少并降低功率损耗。对于啮合的正齿轮,罩子采用金属侧板和圆周金属扇区的形式。可变定位的轴向和径向护罩纳入NASA钻机中,研究了护罩间隙对齿轮箱功率损耗的影响。许多研究人员对单齿轮齿轮进行了实验和分析结果,有和没有覆盖。笼罩的网状齿轮试验结果在文献中稀疏。在NASA Glenn运行时,在NASA Glenn使用啮合的齿轮在四个护道罩配置中运行:不受欢迎,笼罩(最大轴向,最大径向)和两个中间罩条件。将结果与可用的网状齿轮功率丢失数据/分析以及单一的喷射齿轮数据/分析进行比较。建议是为了未来的工作。

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